Miotto Martina, Gouveia Ricardo M, Connon Che J
Institute of Genetic Medicine, Newcastle University, International Centre for Life, Central Parkway, Newcastle upon Tyne NE1 3BZ, UK.
J Funct Biomater. 2015 Aug 6;6(3):687-707. doi: 10.3390/jfb6030687.
The increasing interest in effort towards creating alternative therapies have led to exciting breakthroughs in the attempt to bio-fabricate and engineer live tissues. This has been particularly evident in the development of new approaches applied to reconstruct corneal tissue. The need for tissue-engineered corneas is largely a response to the shortage of donor tissue and the lack of suitable alternative biological scaffolds preventing the treatment of millions of blind people worldwide. This review is focused on recent developments in corneal tissue engineering, specifically on the use of self-assembling peptide amphiphiles for this purpose. Recently, peptide amphiphiles have generated great interest as therapeutic molecules, both in vitro and in vivo. Here we introduce this rapidly developing field, and examine innovative applications of peptide amphiphiles to create natural bio-prosthetic corneal tissue in vitro. The advantages of peptide amphiphiles over other biomaterials, namely their wide range of functions and applications, versatility, and transferability are also discussed to better understand how these fascinating molecules can help solve current challenges in corneal regeneration.
人们对创造替代疗法的努力兴趣日益浓厚,这在生物制造和工程化活组织的尝试中带来了令人兴奋的突破。这在应用于重建角膜组织的新方法的开发中尤为明显。对组织工程角膜的需求很大程度上是由于供体组织短缺以及缺乏合适的替代生物支架,这阻碍了全球数百万盲人的治疗。本综述聚焦于角膜组织工程的最新进展,特别是为此目的使用自组装肽两亲分子。最近,肽两亲分子作为治疗分子在体外和体内都引起了极大的兴趣。在此,我们介绍这个快速发展的领域,并研究肽两亲分子在体外创建天然生物假体角膜组织方面的创新应用。还讨论了肽两亲分子相对于其他生物材料的优势,即其广泛的功能和应用、多功能性以及可转移性,以便更好地理解这些迷人的分子如何有助于解决当前角膜再生中的挑战。